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Methods and apparatus for detecting and compensating bandwidth limitation and modulation nonlinearity of coherent optical transponder

A coherent optical, bandwidth-limited technology that can be used in multi-carrier systems, electrical components, electromagnetic wave transmission systems, etc., to solve problems such as lack of results and lack of compensation accuracy.

Active Publication Date: 2019-12-24
JUMIPER NETWORKS INC
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  • Abstract
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  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

In addition to bandwidth limitations, modulation nonlinearities can arise from the transfer function of the optical modulator and / or from the nonlinear amplitude response of various components within the optical repeater
[0004] Known solutions to compensate for bandwidth limitations do not yield satisfactory results for optical repeaters with high baud rates (eg >400G) or with high amplitude signals
Furthermore, known solutions often measure the coupling effects of bandwidth limitations and modulation nonlinearities, and thus compensate for the lack of precision
Known solutions to compensate for modulation nonlinearity often compensate for effects from one of the transfer function and the nonlinear amplitude response of the optical modulator, and thus lack satisfactory results

Method used

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  • Methods and apparatus for detecting and compensating bandwidth limitation and modulation nonlinearity of coherent optical transponder
  • Methods and apparatus for detecting and compensating bandwidth limitation and modulation nonlinearity of coherent optical transponder
  • Methods and apparatus for detecting and compensating bandwidth limitation and modulation nonlinearity of coherent optical transponder

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Embodiment Construction

[0015] Polarization multiplexing (PM) is a modulation technique in which an optical carrier can have different optical polarizations that are independently and simultaneously modulated via an electronic signal (eg, information and / or data). The different optical polarizations may include a first polarization channel "X-channel" and a second polarization channel "Y-channel", and the X-channel and Y-channel may be orthogonal (or approximately orthogonal) to each other. For example, the X channel can be horizontally polarized light and the Y channel can be vertically polarized light. In some examples, the X and Y channels need not be horizontally and vertically polarized, and need not be orthogonal.

[0016] Quadrature Amplitude Modulation (QAM) is a modulation technique in which two or three binary or multilevel electronic data signals are transmitted via in-phase (or "I" channel) and quadrature (90-degree or approximately 90-degree) phase (or " Q" channel) is modulated onto a ...

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Abstract

In some embodiments, an apparatus includes a memory and a processor operatively coupled to the memory. The processor is configured to send a stimulus signal at a frequency that corresponds to a firstfrequency value to a tributary channel of a coherent optical transponder. The processor is configured to adjust an amplitude of the stimulus signal and receive a first plurality of output optical power values. The processor is configured to adjust the frequency of the stimulus signal and receive a second plurality of output optical power values. The processor is configured to determine a bandwidthlimitation and a modulation nonlinearity, and then send a first signal to a first filter to reduce the bandwidth limitation and a second signal to a second filter to reduce the modulation nonlinearity.

Description

technical field [0001] Some embodiments described herein relate generally to methods and apparatus for improving the performance of coherent optical transponders in optical communication systems. In particular, but not by way of limitation, some embodiments described herein relate to methods and apparatus for detecting and compensating for bandwidth limitations and modulation nonlinearities of coherent optical transponders in optical communication systems. Background technique [0002] With the increasing demand for optical communication systems with high data rate performance, optical quadrature amplitude modulation (QAM) signals are generated to provide high data carrying capacity and high frequency efficiency. Quadrature Amplitude Modulation (QAM) is a modulation technique in which two or three binary or multilevel electronic data signals are transmitted through in-phase (or "I" channel) and quadrature (90 degree) phase (or "Q" channel) are modulated onto a single optica...

Claims

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Application Information

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IPC IPC(8): H04B10/548H04B10/556H04B10/564H04L27/34
CPCH04B10/548H04B10/564H04L27/34H04B10/5561H04B10/613H04B10/5057H04B10/532H04B10/073H04B10/07955H04B10/616
Inventor 王强岳洋
Owner JUMIPER NETWORKS INC
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